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蘆丁在石墨烯/離子液體復(fù)合膜上的電化學(xué)行為研究
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高等學(xué)校博士學(xué)科點專項科研基金資助項目(20120008110033)


Electrochemical Behavior of Rutin on Graphene and Ionic Liquids Composite Film Modified Electrode
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    摘要:

    研究了N-辛基吡啶六氟硝磷酸鹽(N-octylpyridinum hexafluorophosphate,OPFP)離子液體與新型碳納米材料石墨烯(Graphene,GR)復(fù)合膜修飾玻碳電極,制備了一種新型的IL/GR/GCE電極用于檢測蘆丁香茶和藥片中蘆丁的濃度。并通過循環(huán)伏安法、阻抗譜和方波伏安法研究蘆丁在IL/GR/GCE的電化學(xué)性能,表明離子液體優(yōu)良的導(dǎo)電和粘合性能及石墨烯納米材料大比表面積、高電子傳遞能力和強(qiáng)催化能力,極大地提高了電極電化學(xué)性能和檢測響應(yīng)。在最優(yōu)檢測條件下,方波伏安法測定發(fā)現(xiàn)其峰電流與蘆丁濃度在0.05~11μmol/L范圍內(nèi)呈現(xiàn)良好的線性關(guān)系,線性相關(guān)系數(shù)0.997,檢測下限為0.01μmol/L(S/N為3)。將該修飾電極用于檢測實際樣品中蘆丁的含量,表現(xiàn)出較強(qiáng)的抗干擾能力和良好的穩(wěn)定性。

    Abstract:

    An electrode for the detection of rutin in tea and pill was produced and fabricated, which was modified by the glass carbon electrode (GCE) surface by graphene (GR) nanometer materials and n-octylpyridinum hexafluorophosphate (OPFP). Different electrochemical methods such as cyclic vohammetry, impedance spectroscopy and square wave voltammetry were used to investigate the electrochemical behaviors of rutin on IL/GR/GCE, indicating that greatly improved the electrochemical performance and detection response due to ionic conductivity and adhesiveness of room temperature and the large specific surface area and high electron transfer of graphene. Under the optimal conditions using square wave voltammetry, the rutin oxidative peak current was linearly related to its concentration in the range from 0.05μmol/L to 11μmol/L with the detection limit estimated to 0.01μmol/L(S/N=3) and the linear regression coefficient was 0.997. Finally, the developed electrode was successfully applied to detect the content of rutin in real samples, which displays good stability and excellent anti-interference ability.

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王 輝,王志強(qiáng),劉 剛,張志豪.蘆丁在石墨烯/離子液體復(fù)合膜上的電化學(xué)行為研究[J].農(nóng)業(yè)機(jī)械學(xué)報,2014,45(S1):219-224. Wang Hui, Wang Zhiqiang, Liu Gang, Zhang Zhihao. Electrochemical Behavior of Rutin on Graphene and Ionic Liquids Composite Film Modified Electrode[J]. Transactions of the Chinese Society for Agricultural Machinery,2014,45(S1):219-224.

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  • 收稿日期:2014-07-21
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  • 在線發(fā)布日期: 2014-11-15
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